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Evaluation of Performance and Emissions of Ceramic Coated Turbocharged Direct Injection Diesel Engine operated with Diesel and Biodiesel Blends

机译:用柴油机和生物柴油混合物进行陶瓷涂层涡轮增压直喷式柴油机性能和排放评价

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It is evident that the main derivatives of biodiesel obtained from the transesterification of vegetable oils are identified as a best suitable alternate fuel for conventional diesel fuel.However higher viscosity and poor volatility of biodiesel causes engine problems for long-term use in diesel engines.Preheating of biodiesel is one of the technique reducing the problems associated with the higher viscosity of biodiesel in diesel engines.The positive effect of increased operating temperature of ceramic-coated engine concept is incorporated to avoid the preheating and maximize the effective heat release of biodiesel.The combination of increased operating temperature associated with LHR engine and oxygenated nature of biodiesel ensure nearly complete combustion.The experiment was conducted on a four cylinder four stroke direct injection turbocharged diesel engine and the combustion chamber was coated with partially stabilized zirconia(PSZ)of 0.35 mm thickness over 0.15 mm thickness of NiCrAl bond coat.The performance and emissions of conventional turbocharged engine and ceramic coated turbocharged engine were analyzed using diesel and biodiesel blends.
机译:很明显,从植物油酯交换中获得的生物柴油的主要衍生物被鉴定为常规柴油燃料的最佳合适的替代燃料。然而,生物柴油的粘度较高,挥发性差导致发动机问题在柴油发动机中长期使用。精神生物柴油是减少与柴油发动机中生物柴油粘度相关的问题的技术之一。掺入了陶瓷涂层发动机概念的升高工作温度的积极作用,以避免预热并最大化生物柴油的有效热释放。该增加与LHR发动机相关的工作温度和生物柴油的氧化性质的组合确保了几乎完全的燃烧。在四缸四冲程直接喷射涡轮增压涡轮发动机上进行实验,燃烧室涂有0.35mm的部分稳定氧化锆(PSZ)厚度超过0.15毫米的Ni使用柴油和生物柴油混合物分析了传统涡轮增压发动机和陶瓷涂层涡轮增压发动机的性能和排放。

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